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雄性种子甲虫复杂的线粒体-细胞核相互作用及交配的代谢成本

Complex mitonuclear interactions and metabolic costs of mating in male seed beetles.

作者信息

Immonen E, Rönn J, Watson C, Berger D, Arnqvist G

机构信息

Evolutionary Biology Centre, Department of Ecology and Genetics, Uppsala University, Uppsala, Sweden.

出版信息

J Evol Biol. 2016 Feb;29(2):360-70. doi: 10.1111/jeb.12789. Epub 2015 Nov 28.

DOI:10.1111/jeb.12789
PMID:26548644
Abstract

The lack of evolutionary response to selection on mitochondrial genes through males predicts the evolution of nuclear genetic influence on male-specific mitochondrial function, for example by gene duplication and evolution of sex-specific expression of paralogs involved in metabolic pathways. Intergenomic epistasis may therefore be a prevalent feature of the genetic architecture of male-specific organismal function. Here, we assess the role of mitonuclear genetic variation for male metabolic phenotypes [metabolic rate and respiratory quotient (RQ)] associated with ejaculate renewal, in the seed beetle Callosobruchus maculatus, by assaying lines with crossed combinations of distinct mitochondrial haplotypes and nuclear lineages. We found a significant increase in metabolic rate following mating relative to virgin males. Moreover, processes associated with ejaculate renewal showed variation in metabolic rate that was affected by mitonuclear interactions. Mitochondrial haplotype influenced mating-related changes in RQ, but this pattern varied over time. Mitonuclear genotype and the energy spent during ejaculate production affected the weight of the ejaculate, but the strength of this effect varied across mitochondrial haplotypes showing that the genetic architecture of male-specific reproductive function is complex. Our findings unveil hitherto underappreciated metabolic costs of mating and ejaculate renewal, and provide the first empirical demonstration of mitonuclear epistasis on male reproductive metabolic processes.

摘要

对线粒体基因通过雄性进行选择缺乏进化响应,预示着核基因对雄性特异性线粒体功能影响的进化,例如通过基因复制以及参与代谢途径的旁系同源基因性别特异性表达的进化。因此,基因组间上位性可能是雄性特异性机体功能遗传结构的一个普遍特征。在此,我们通过检测具有不同线粒体单倍型和核系杂交组合的品系,评估线粒体-核基因变异对与射精更新相关的雄性代谢表型[代谢率和呼吸商(RQ)]的作用,该研究以黄斑豆象为对象。我们发现,与未交配雄性相比,交配后雄性的代谢率显著增加。此外,与射精更新相关的过程显示出代谢率的变化,这受到线粒体-核相互作用的影响。线粒体单倍型影响交配相关的呼吸商变化,但这种模式随时间而变化。线粒体-核基因型以及射精产生过程中消耗的能量影响射精量,但这种影响的强度因线粒体单倍型而异,这表明雄性特异性生殖功能的遗传结构很复杂。我们的研究结果揭示了迄今为止未被充分认识的交配和射精更新的代谢成本,并首次实证证明了线粒体-核上位性对雄性生殖代谢过程的影响。

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